Skip to main navigation Skip to search Skip to main content

Operating modes of electrochemical H-concentration probes for tritium sensors

Research output: Indexed journal article Articlepeer-review

6 Citations (Scopus)

Abstract

Potentiometric hydrogen sensors using different solid-state electrolytes have been designed and tested at the Electrochemical Methods Lab at Institut Quimic de Sarria (IQS). The most promising element (Sr(Ce0.9-Zr0.1)0.95Yb0.05O3-α) has been selected for this work in order to evaluate the sensor performance at different hydrogen concentrations in two different operating modes: amperometric and potentiometric. In addition, the sensor response has been evaluated at different working temperatures (500, 575 and 650 °C). The experiments performed proved that when the sensor was used in a potentiometric mode, there is a threshold hydrogen concentration that the sensor can detect depending on the working conditions; 15 mbar at 575 °C and 10 mbar 650 °C. At 500 °C the minimum working temperature of this ceramic has not been achieved, so large deviations between experimental data and theoretical calculations has been obtained. When the sensor was used in an amperometric mode the obtained currents increased as a function of the applied voltage. At a fixed potential, the higher the temperature the higher the current was. So the sensor sensitivity can be tuned by changing the applied voltage at a fixed temperature and hydrogen concentration.

Original languageEnglish
Pages (from-to)1710-1714
Number of pages5
JournalFusion Engineering and Design
Volume98-99
DOIs
Publication statusPublished - 1 Oct 2015
Event28th Symposium on Fusion Technology (SOFT 2014) - Barcelona, Spain
Duration: 29 Sept 20143 Oct 2014
Conference number: 28

Keywords

  • Hydrogen
  • Liquid blanket
  • Proton conducting ceramics
  • Sensor
  • Tritium

Fingerprint

Dive into the research topics of 'Operating modes of electrochemical H-concentration probes for tritium sensors'. Together they form a unique fingerprint.

Cite this